ANALISIS PENYEBAB KERETAKAN WINDSHIELD TERHADAP KERUSAKAN HEATING ELEMENT DI PESAWAT AIRBUS 330
DOI:
https://doi.org/10.31000/mbjtm.v9i1.13476Kata Kunci:
Windshield, heating element, cracks, inspection, airplane.Abstrak
Flight safety is important to ensure passengers safely reach their destination. Aircraft have several parts in its maintenance, one of which is the windshield. Cracks in the windshield are often found due to damage to the heating element system. The rate of addition of heating element resistance is 0.133 /h and the rate of addition of windshield cracks to the number of flying hours is 0.02 mm/h. The measurement results show that the left and right windshield 9N-ALY registration aircraft with heating elements function properly. The left windshield of PK-GPV registration is in zone B with a dielectric yield of 0.8 mA (close to the limit of 1 mA). The measurement results for the PK-GPX registration aircraft stated that the left windshield had to be replaced. These results were obtained because the insulation test on the heating element was 78.8 Mohms (below the minimum limit of 100 Mohms). A low insulation test will cause the heating element system to have low insulation quality and leakage between the interconnections. If the windshield is not replaced, there will be a risk of failure of the heating element system and cracks on the windshield will occur.
Referensi
Duncan, (2023), Aviation Maintenance Technician Handbook – General: FAA-H-8083-30B
Emeka, (2018). Analysis of Windshield Repair Technology. International Journal of Trend in Scientific Research and Development (IJTSRD), Volume - 2 | Issue – 4, Pg 408-413
Hanafi Irma Halima (2024). Tanggungjawab Negara Dalam Pengawasan Terhadap Operator Penerbangan Di Indonesia. Jurnal Pembangunan Hukum Indonesia. Volume 6, Nomor 3, halaman 498-520
Hardani dkk. 2020. Metode Penelitian Kualitatif dan Kuantitatif. Yogyakarta : Pustaka Ilmu
Hobbs Alan, (2021). Aircraft Maintenance And Inspection. San Jose State University Research Foundation at NASA Ames Research Center Moffett Field, California, USA
Irawan Wira Faisal, Margono, Utomo Wasito, (2019). Rancangan Prototipe Anti-Icing Winshield Pesawat Dengan Menggunakan Sensor LM-35 Berbabis Microcontroller Arduino Uno Di Daerah Tropis. Politeknik Penerbangan Surabaya, Prosiding Seminar Nasional, Inovasi Teknologi Penerbangan (SNITP), Vol. 3 No. 2
Isra Fadhlurrahman, Miro Fidel, (2022). Analisis Prioritas Pilihan Moda Transportasi Berbagai Kriteria Dengan Metode AHP Menggunakan Aplikasi Expert Choice (Studi Kasus: Rute Padang - Jakarta). Jurnal REKAYASA, Vol. 12, No. 02. 211-223
Jamaludin, Sumarno, (2019). Analysis of Causes Damage in Flight Compartment Windows Due to Heating System Failure in Boeing 737-800 Airport Using Weibull Analysis Distribution. Journal of Physics: Conference Series
Laksono Agung, Sitompul Afandi Sahril, Suprianto Agus, Fitriansyah Rizky, (2022). Analisis Numerik Pengaruh Gasket pada Windshield Pesawat Komuter 19 Penumpang Terhadap Fenomena Bird Strike. Jurnal Teknologi Kedirgantaraan, Vol. 7 No. 1
Lu H. K., Zhang C. Y., Zhang G. Z., (2024). Effect on damage of aircraft windshield impacted by light UAV with different postures. The Aeronautical Journal, 128, pp. 771–787
Mora, (2012). Telaahan Literatur Tentang Program Perawatan Pesawat Udara. Jurnal Penelitian Perhubungan Udara, Vol. 38 No. 4
Mukhlison Huda Affan, Fatra Oka, Kurniawan Engkus Iwan, (2022). Rancangan Alat Bantu Pelepas Windshield Pada Pesawat KING AIR B200 GT. Machine; Jurnal Teknik Mesin Vol. 8 No. 2
Purba Br. Seftiani Nadira, Dija Rafia Nur, Subiyono Gatot, (2023). Studi Kasus Terjadinya Interlayer Degradation Windshield No. 1 R/H pada Pesawat Boeing 737-900ER. Repository No.FO.31.6.1-V1
Safety Briefing Sheet, (2020). Tingkatkan Awareness Saat Melakukan Proses Inspeksi pada Windshield. GMF Aeroasia No. TQY-SBS-008-2020. URL https://safety.gmf-aeroasia.co.id/briefing_sheet/2020/28_SBS_Periode_II_October_2020.pdf, didownload tanggal 23-Jan-2025
Setiowulandari Dwi Syahla Salsabila, Setiawan Hery, Ardianto Haris., (2022). Analisis Windshield Pesawat Boeing 737-NG Terhadap Kegagalan Dengan Menggunakan Metode Failure Mode Effect And Analysis Dan Weibull. Teknika STTKD : Jurnal Teknik, Elektronik, Engine Vol 8, No. 2
Sudarno, Firdiansyah Ryan, (2018). Biaya Perawatan Pesawat Udara dan Pedoman Perlakuan Akuntansi (Studi Pustaka). Sekolah Tinggi Penerbangan, AVIASI Jurnal Ilmiah Kedirgantaraan Vol. 15 No.2
Taaqbier Mohammed, Sofyan Edi, Setiawan Ferry, (2021). Perancangan Aktivitas Maintenance Dengan Metode Reliability Pada Sistem Auxiliary Power Unit (APU) Pesawat Boeing 737-500 Studi Kasus Di PT. MMF Surabaya. Teknika STTKD : Jurnal Teknik, Elektronik, Engine Vol 7, No. 2
Unduhan
Diterbitkan
Terbitan
Bagian
Lisensi
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).
Motor Bakar : Jurnal Teknik Mesin have CC BY-NC or an equivalent license as the optimal license for the publication, distribution, use, and reuse of scholarly work.
In developing strategy and setting priorities, Motor Bakar : Jurnal Teknik Mesin recognize that free access is better than priced access, libre access is better than free access, and libre under CC BY-NC or the equivalent is better than libre under more restrictive open licenses. We should achieve what we can when we can. We should not delay achieving free in order to achieve libre, and we should not stop with free when we can achieve libre.
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0) License
YOU ARE FREE TO:
- Share — copy and redistribute the material in any medium or format
- Adapt — remix, transform, and build upon the material for any purpose, even commercially.
- The licensor cannot revoke these freedoms as long as you follow the license terms